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Broadband optical modulators : science, technology, and applications

Author: Antao Chen; Edmond J Murphy
Publisher: Boca Raton : CRC Press/Taylor & Francis Group, ©2012.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
This book provides a comprehensive overview of the state of the art in optical modulator science and technology. It covers fundamental topics such as the electro-optic effect in nonlinear optic crystals and semiconductors. It addresses the optical and electro-optic properties of relevant materials, including traditional single crystalline lithium niobate, silicon, and III-V compound semiconductors, as well as  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Broadband optical modulators.
Boca Raton : CRC Press/Taylor & Francis Group, ©2012
(DLC) 2011026883
(OCoLC)495781644
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Antao Chen; Edmond J Murphy
ISBN: 9781439825075 1439825076 1280121793 9781280121791
OCLC Number: 774276682
Description: 1 online resource (xix, 531 pages) : illustrations
Contents: Note continued: 14. Reliability of Lithium Niobate Modulators / Hirotoshi Nagata --
14.1. Introduction --
14.2. The Need for DC Biasing --
Operation Point Shift Due to Mechanical Stress/Strain --
Operation Point Shift Due to Temperature Change --
14.3. Contributors to DC Drift --
Contribution of Buffer Layer to DC Drift --
Drift Behavior for Buffered and Unbuffered Modulators --
Effect of Bias Polarity --
Contribution of the Boundary between Material Layers to DC Drift --
Activation Energy and Reliability --
14.4. Bias-Free Modulator --
References --
15. Bias Control Techniques / Pak S. Cho --
15.1. Modulator Bias Control --
Optimum Bias for Optical OOK --
Nonoptimum Bias Penalty for Optical OOK --
Modulator Bias Stability Control Techniques --
15.2. Modulator Bias Control for Optical QPSK --
Optimum Bias and Analysis of Bias Control for Optical QPSK --
Nonoptimum Bias Penalty for Optical QPSK --
15.3. Modulator for Optical OFDM Generation --
Optimum Bias and Nonoptimum Bias Penalty for Optical OFDM --
Bias Control for Optical OFDM --
15.4. Summary --
References --
SECTION V Applications beyond the Digital Telecom System --
16. Broadband Electric Field Sensors / Vittorio M.N. Passaro --
16.1. Introduction --
16.2. Electric Field Optical Fiber Sensors --
16.3. Integrated Optical Electric Field Sensors --
Electric Field Sensors Based on Electro-Optic Modulators --
Electric Field Sensors without Metal Electrodes --
Electric Field Sensors Based on Electroabsorption Modulators --
Electric Field Sensors Based on Coherence Modulators --
Electric Field Sensors Based on Coupled Cavities --
Active Electric Field Sensors --
Other Electric Field Sensors --
16.4. Conclusions --
References --
17. Passive Millimeter-Wave Imaging Using Optical Modulators / Dennis W. Prather --
17.1. Overview --
17.2. MMW Detection Using Optical Techniques --
17.3. Modulator Conversion Efficiency --
17.4. Traveling-Wave Modulator Design and Optimization --
17.5. Modulator Fabrication and Characterization --
17.6. MMW Detector Experimental Results --
17.7. Imaging Results Obtained by a Single-Pixel Scanner --
17.8. Distributed Aperture Imaging --
References --
18. Optical Beam Forming for Microwave and Millimeter Waves / Matthew R. Fetterman --
18.1. Introduction --
18.2. Optical Phased Array Radar --
18.3. Optical Phase Conjugation --
18.4. Imaging and Holography --
18.5. Conclusion --
References --
19. Electro-Optic Time Lenses for Shaping and Imaging Optical Waveforms / Brian H. Kolner --
19.1. Introduction --
19.2. Space-Time Duality: Diffraction and Dispersion --
19.3. Narrowband Dispersion --
19.4. Space Lenses: General Properties --
19.5. Time Lenses --
19.6. The Focal Length-to-Aperture Ratio: f-Number --
19.7. Electro-Optic Time Lenses --
Short Homogeneous Field Modulators: Sinusoidal Drive --
Traveling-Wave Phase Modulators: Sinusoidal Modulation --
Traveling-Wave Phase Modulators: Gaussian Pulse Modulation --
19.8. Drive Waveform Comparisons --
19.9. Pulse Compression --
19.10. Temporal Imaging --
19.11. Apertures, Impulse Response, and Resolution --
19.12. Practical Issues --
19.13. Conclusions --
Acknowledgments --
References --
20. RF Photonics-Optical Pulse Synthesizer / Hiroshi Murata --
20.1. Introduction --
20.2. Principle of Optical Pulse Generation --
Basic Scheme --
Generation of Optical Sidebands by Phase Modulation --
Pulse Compression --
20.3. EO Phase Modulator --
Phase Modulation --
Traveling-Wave Electrode EO Modulator --
Resonant Standing-Wave Electrode EO Modulator --
20.4. Group-Delay Dispersion Circuit --
Bulk Optics --
Optical Fiber --
Guided-Wave Circuits --
20.5. Optical Pulse Generator and Optical Frequency Comb --
Generation by Discrete Devices --
Integrated Optical Device --
Optical Frequency Comb Generator --
Mach-Zehnder Modulator-Based Optical Frequency Comb --
20.6. Conclusions --
References --
21. Optoelectronic Oscillator / Andrey B. Matsko --
21.1. Introduction --
Photonic RF Oscillators --
General Architecture of OEO and COEO --
21.2. OEO Characteristics --
Optical Gain of a Photonic Link --
RF Power Generated by an OEO --
Oscillation Frequency --
Phase Noise and Frequency Stability --
21.3. Characteristics of OEOs and COEOs Based on Various Modulator Types --
The OEO Based on an MZI EOM --
An OEO Based on an EAM --
A Tunable Fiber-Based OEO --
Coupled Optoelectronic Oscillator --
21.4. WGM EOM-Based OEO --
WGM-Based Tunable OEO --
21.5. Tunable OEO with a Fiber Laser --
21.6. Packaged Tunable OEO --
21.7. Summary and Conclusion --
References --
22. Electro-Optic Analog-to-Digital Converters / Hongming Zhang --
22.1. Introduction --
22.2. The Development of Optical Analog-to-Digital Conversion --
Optoelectronic Hybrid Analog-to-Digital Conversion --
All-Optical Analog-to-Digital Conversion --
References --
23. Fiber-Optic Gyroscopes / Jeffrey E. Lewis --
23.1. Introduction --
23.2. Principle of Operation --
23.3. Device Topologies --
Minimum Reciprocal Configuration --
23.4. Integrated Optics Circuit --
23.5. Improvements to the Integrated Optic Circuit --
References --
24. Polarization Control / David Moilanen --
24.1. Introduction --
24.2. Lithium Niobate Polarization Controllers --
Device Description --
Example of a Commercially Available LiNbO3 Polarization Controller Device and Derivation of Device Parameters --
24.3. Operation of Lithium Niobate Polarization Controllers --
Pure TE/TM Phase Shifting and Pure TE/TM Mode --
Conversion --
Endlessly Rotatable Linear Birefringence with Constant Phase Retardation --
Endlessly Rotatable Linear Birefringence with Variable Phase Retardation --
24.4. Automatic Polarization Control in Fiber-Optic Systems --
References.
Responsibility: edited by Antao Chen, Edmond J. Murphy.

Abstract:

This book provides a comprehensive overview of the state of the art in optical modulator science and technology. It covers fundamental topics such as the electro-optic effect in nonlinear optic crystals and semiconductors. It addresses the optical and electro-optic properties of relevant materials, including traditional single crystalline lithium niobate, silicon, and III-V compound semiconductors, as well as emerging materials such as electrooptic polymers and organic nonlinear optic crystals. For each type of modulator, the author discusses the factors important to modulator performance, typical modulator design, and fabrication"--

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Graduate students and research scientists will benefit from this outstanding book. Readers interested in recent technologies will find several chapters devoted to applications beyond the digital Read more...

 
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